296 lines
10 KiB
Python
Executable File
296 lines
10 KiB
Python
Executable File
#!/usr/bin/env python3
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# SPDX-FileCopyrightText: Chris Braun (cryzed) <cryzed@googlemail.com>
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#
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# SPDX-License-Identifier: GPL-3.0-or-later
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"""
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Insert login information using Bitwarden CLI and a dmenu-compatible application
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(e.g. dmenu, rofi -dmenu, ...).
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"""
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USAGE = """The domain of the site has to be in the name of the Bitwarden entry, for example: "github.com/cryzed" or
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"websites/github.com". The login information is inserted by emulating key events using qutebrowser's fake-key command in this manner:
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[USERNAME]<Tab>[PASSWORD], which is compatible with almost all login forms.
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If enabled, with the `--totp` flag, it will also move the TOTP code to the
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clipboard, much like the Firefox add-on.
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You must log into Bitwarden CLI using `bw login` prior to use of this script.
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The session key will be stored using keyctl for the number of seconds passed to
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the --auto-lock option.
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To use in qutebrowser, run: `spawn --userscript qute-bitwarden`
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"""
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EPILOG = """Dependencies: tldextract (Python 3 module), pyperclip (optional
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Python module, used for TOTP codes), Bitwarden CLI (1.7.4 is known to work
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but older versions may well also work)
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WARNING: The login details are viewable as plaintext in qutebrowser's debug log
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(qute://log) and might be shared if you decide to submit a crash report!"""
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import argparse
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import enum
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import functools
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import os
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import shlex
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import subprocess
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import sys
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import json
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import tldextract
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argument_parser = argparse.ArgumentParser(
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description=__doc__,
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usage=USAGE,
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epilog=EPILOG,
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)
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argument_parser.add_argument("url", nargs="?", default=os.getenv("QUTE_URL"))
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argument_parser.add_argument("--dmenu-invocation", "-d", default="dmenu -i -p Bitwarden", help="Invocation used to execute a dmenu-provider")
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argument_parser.add_argument(
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"--password-prompt-invocation",
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"-p",
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default='dmenupass "Master Password"',
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help="Invocation used to prompt the user for their Bitwarden password",
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)
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argument_parser.add_argument("--no-insert-mode", "-n", dest="insert_mode", action="store_false", help="Don't automatically enter insert mode")
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argument_parser.add_argument("--totp", "-t", action="store_true", help="Copy TOTP key to clipboard")
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argument_parser.add_argument("--io-encoding", "-i", default="UTF-8", help="Encoding used to communicate with subprocesses")
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argument_parser.add_argument("--merge-candidates", "-m", action="store_true", help="Merge pass candidates for fully-qualified and registered domain name")
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argument_parser.add_argument("--auto-lock", type=int, default=900, help="Automatically lock the vault after this many seconds")
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group = argument_parser.add_mutually_exclusive_group()
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group.add_argument("--username-only", "-e", action="store_true", help="Only insert username")
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group.add_argument("--password-only", "-w", action="store_true", help="Only insert password")
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group.add_argument("--totp-only", "-T", action="store_true", help="Only insert totp code")
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stderr = functools.partial(print, file=sys.stderr)
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class ExitCodes(enum.IntEnum):
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SUCCESS = 0
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FAILURE = 1
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# 1 is automatically used if Python throws an exception
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NO_PASS_CANDIDATES = 2
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COULD_NOT_MATCH_USERNAME = 3
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COULD_NOT_MATCH_PASSWORD = 4
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def qute_command(command):
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with open(os.environ["QUTE_FIFO"], "w") as fifo:
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fifo.write(command + "\n")
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fifo.flush()
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def ask_password(password_prompt_invocation):
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process = subprocess.run(
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shlex.split(password_prompt_invocation),
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text=True,
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stdout=subprocess.PIPE,
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)
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if process.returncode > 0:
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raise Exception("Could not unlock vault")
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master_pass = process.stdout.strip()
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return subprocess.check_output(
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["bw", "unlock", "--raw", "--passwordenv", "BW_MASTERPASS"],
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env={**os.environ, "BW_MASTERPASS": master_pass},
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text=True,
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).strip()
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def get_session_key(auto_lock, password_prompt_invocation):
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if auto_lock == 0:
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subprocess.call(["keyctl", "purge", "user", "bw_session"])
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return ask_password(password_prompt_invocation)
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else:
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process = subprocess.run(
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["keyctl", "request", "user", "bw_session"],
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text=True,
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stdout=subprocess.PIPE,
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)
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key_id = process.stdout.strip()
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if process.returncode > 0:
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session = ask_password(password_prompt_invocation)
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if not session:
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raise Exception("Could not unlock vault")
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key_id = subprocess.check_output(
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["keyctl", "add", "user", "bw_session", session, "@u"],
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text=True,
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).strip()
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if auto_lock > 0:
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subprocess.call(["keyctl", "timeout", str(key_id), str(auto_lock)])
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return subprocess.check_output(
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["keyctl", "pipe", str(key_id)],
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text=True,
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).strip()
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def pass_(domain, encoding, auto_lock, password_prompt_invocation):
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session_key = get_session_key(auto_lock, password_prompt_invocation)
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process = subprocess.run(
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["bw", "list", "items", "--nointeraction", "--session", session_key, "--url", domain],
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capture_output=True,
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)
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err = process.stderr.decode(encoding).strip()
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if err:
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msg = "Bitwarden CLI returned for {:s} - {:s}".format(domain, err)
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stderr(msg)
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if "Vault is locked" in err:
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stderr("Bitwarden Vault got locked, trying again with clean session")
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return pass_(domain, encoding, 0, password_prompt_invocation)
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if process.returncode:
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return "[]"
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out = process.stdout.decode(encoding).strip()
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return out
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def get_totp_code(selection_id, domain_name, encoding, auto_lock, password_prompt_invocation):
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session_key = get_session_key(auto_lock, password_prompt_invocation)
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process = subprocess.run(
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["bw", "get", "totp", "--nointeraction", "--session", session_key, selection_id],
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capture_output=True,
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)
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err = process.stderr.decode(encoding).strip()
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if err:
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# domain_name instead of selection_id to make it more user-friendly
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msg = "Bitwarden CLI returned for {:s} - {:s}".format(domain_name, err)
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stderr(msg)
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if "Vault is locked" in err:
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stderr("Bitwarden Vault got locked, trying again with clean session")
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return get_totp_code(selection_id, domain_name, encoding, 0, password_prompt_invocation)
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if process.returncode:
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return "[]"
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out = process.stdout.decode(encoding).strip()
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return out
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def dmenu(items, invocation, encoding):
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command = shlex.split(invocation)
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process = subprocess.run(command, input="\n".join(items).encode(encoding), stdout=subprocess.PIPE)
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return process.stdout.decode(encoding).strip()
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def fake_key_raw(text):
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for character in text:
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# Escape all characters by default, space requires special handling
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sequence = '" "' if character == " " else r"\{}".format(character)
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qute_command("fake-key {}".format(sequence))
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def main(arguments):
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if not arguments.url:
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argument_parser.print_help()
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return ExitCodes.FAILURE
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extract_result = tldextract.extract(arguments.url)
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# Try to find candidates using targets in the following order: fully-qualified domain name (includes subdomains),
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# the registered domain name and finally: the IPv4 address if that's what
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# the URL represents
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candidates = []
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for target in filter(
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None,
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[
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extract_result.fqdn,
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extract_result.registered_domain,
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extract_result.subdomain + "." + extract_result.domain,
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extract_result.domain,
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extract_result.ipv4,
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],
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):
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target_candidates = json.loads(
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pass_(
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target,
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arguments.io_encoding,
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arguments.auto_lock,
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arguments.password_prompt_invocation,
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)
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)
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if not target_candidates:
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continue
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candidates = candidates + target_candidates
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if not arguments.merge_candidates:
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break
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else:
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if not candidates:
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stderr("No pass candidates for URL {!r} found!".format(arguments.url))
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return ExitCodes.NO_PASS_CANDIDATES
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if len(candidates) == 1:
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selection = candidates.pop()
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else:
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choices = ["{:s} | {:s}".format(c["name"], c["login"]["username"]) for c in candidates]
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choice = dmenu(choices, arguments.dmenu_invocation, arguments.io_encoding)
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choice_tokens = choice.split("|")
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choice_name = choice_tokens[0].strip()
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choice_username = choice_tokens[1].strip()
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selection = next((c for (i, c) in enumerate(candidates) if c["name"] == choice_name and c["login"]["username"] == choice_username), None)
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# Nothing was selected, simply return
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if not selection:
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return ExitCodes.SUCCESS
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username = selection["login"]["username"]
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password = selection["login"]["password"]
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totp = selection["login"]["totp"]
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if arguments.username_only:
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fake_key_raw(username)
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elif arguments.password_only:
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fake_key_raw(password)
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elif arguments.totp_only:
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# No point in moving it to the clipboard in this case
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fake_key_raw(
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get_totp_code(
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selection["id"],
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selection["name"],
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arguments.io_encoding,
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arguments.auto_lock,
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arguments.password_prompt_invocation,
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)
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)
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else:
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# Enter username and password using fake-key and <Tab> (which seems to work almost universally), then switch
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# back into insert-mode, so the form can be directly submitted by
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# hitting enter afterwards
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fake_key_raw(username)
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qute_command("fake-key <Tab>")
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fake_key_raw(password)
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if arguments.insert_mode:
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qute_command("mode-enter insert")
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# If it finds a TOTP code, it copies it to the clipboard,
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# which is the same behavior as the Firefox add-on.
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if not arguments.totp_only and totp and arguments.totp:
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# The import is done here, to make pyperclip an optional dependency
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import pyperclip
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pyperclip.copy(
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get_totp_code(
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selection["id"],
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selection["name"],
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arguments.io_encoding,
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arguments.auto_lock,
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arguments.password_prompt_invocation,
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)
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)
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return ExitCodes.SUCCESS
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if __name__ == "__main__":
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arguments = argument_parser.parse_args()
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sys.exit(main(arguments))
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